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Railway Group Standard
GK/RT0075
Issue Three
Date September 2014
Lineside Signal Spacing and Speed Signage
Synopsis This document specifies the minimum distances that must be provided between the first cautionary aspect and the stop signal to which it applies. In addition, it addresses the signing for permissible speeds and speed restrictions.
Copyright in the Railway Group Standards is owned by Rail Safety and Standards Board Limited. All rights are hereby reserved. No Railway Group Standard (in whole or in part) may be reproduced, stored in a retrieval system, or transmitted, in any form or means, without the prior written permission of Rail Safety and Standards Board Limited, or as expressly permitted by law. RSSB Members are granted copyright licence in accordance with the Constitution Agreement relating to Rail Safety and Standards Board Limited. In circumstances where Rail Safety and Standards Board Limited has granted a particular person or organisation permission to copy extracts from Railway Group Standards, Rail Safety and Standards Board Limited accepts no responsibility for, nor any liability in connection with, the use of such extracts, or any claims arising therefrom. This disclaimer applies to all forms of media in which extracts from Railway Group Standards may be reproduced.
Published by: RSSB Block 2 Angel Square 1 Torrens Street London EC1V 1NY © Copyright 2014 Rail Safety and Standards Board Limited
Uncontrolled When Printed Document comes into force 06/12/2014
Supersedes GKRT0075 Iss 2 on 06/12/2014 Superseded by GKRT0075 Iss 4 on 05/12/2015
Railway Group Standard
Lineside Signal Spacing and Speed Signage
GK/RT0075
Issue Three
Date September 2014
Page 2 of 58 RSSB
Issue record
Issue Date Comments
One March 2011 Original document. Superseded GK/RT0034 issue four, Lineside Signal Spacing, and GK/RT0038, issue two, Signing of Permissible Speeds and Speed Restrictions.
Two September 2011 Small scale change to correct inconsistencies between GK/RT0075 issue one, Lineside Signal Spacing and Speed Signage, and its associated guidance note GK/GN0675.
Three September 2014 Revision to E.2.1 to remove requirement for a risk assessment before an emergency speed restriction is applied. Other changes delivered by project 12/033 include:
Revisions to clauses 2.1.3b), 3.3.2.4, 3.4.1.4a), D.1.1.2, D.2.5.1a), D.2.5.2, D.4.2.1 and E.2.
New clause at D.2.5.3.
Updates to Figures D-21 and D-27.
The removal of clause D.4.2.3.
Changes made to address typographical errors in Table B.1 and Table X-3.
Clause number 3.3.1.5 corrected to 3.4.1.5.
Updates to the definitions section.
Clause 4.1.1.3 deleted from application section.
Amended or additional parts and/or sections of revised pages have been marked by a vertical black line in the adjacent margin.
Superseded documents
The following Railway Group Standard is superseded, either in whole or in part as indicated:
Superseded documents Sections superseded
Date when sections are superseded
GK/RT0075, issue two Lineside Signal Spacing and Speed Signage
All 06 December 2014
GK/RT0075 issue two Lineside Signal Spacing and Speed Signage ceases to be in force and is withdrawn as of 06 December 2014.
Supply
The authoritative version of this document is available at www.rgsonline.co.uk. Uncontrolled copies of this document can be obtained from Communications, RSSB, Block 2, Angel Square, 1 Torrens Street, London EC1V 1NY, telephone 020 3142 5400 or e-mail [email protected]. Other Standards and associated documents can also be viewed at www.rgsonline.co.uk.
Uncontrolled When Printed Document comes into force 06/12/2014
Supersedes GKRT0075 Iss 2 on 06/12/2014 Superseded by GKRT0075 Iss 4 on 05/12/2015
Lineside Signal Spacing and Speed Signage
Railway Group Standard
GK/RT0075
Issue Three
Date September 2014
RSSB Page 3 of 58
Contents
Section Description Page
Part 1 Purpose and Introduction 6 1.1 Purpose 6 1.2 Introduction 6 1.3 Approval and authorisation of this document 8
Part 2 Requirements for Lineside Signal Spacing 9 2.1 Compatibility requirements for lineside signal spacing 9 2.2 Requirement for signal spacing 10 2.3 Determining minimum signalling braking distances 10 2.4 Acceptable variations in signal spacing 11 2.5 Consistency of signalling braking distances 11 2.6 Four-aspect signalling 11 2.7 Use of attainable speed to determine minimum signal spacing 12 2.8 Requirements at infrastructure manager boundaries 12
Part 3 Requirements for Signing of Permissible Speeds and Speed Restrictions 13
3.1 Compatibility requirements for signing of permissible speeds and speed restrictions 13
3.2 Requirements for permissible speeds and temporary speed restrictions 14 3.3 Signs for permissible speeds 15 3.4 Provision of signs for temporary and emergency speed restrictions 24
Part 4 Application of this Document 28 4.1 Application – infrastructure managers 28 4.2 Application – railway undertakings 28 4.3 Health and safety responsibilities 28
Appendices 29 Appendix A Signalling Braking Distance Data for all Trains 29 A.1 Composite table for all trains (metres) 29
Appendix B Signalling Braking Distances for Passenger Trains 30 B.1 Composite table for passenger trains (metres) 30
Appendix C Signalling Braking Distances for Trains with Enhanced Braking (9%g mean) 31 C.1 Table for trains with enhanced braking (9%g mean) in metres 31
Appendix D Temporary Speed Restrictions 32 D.1 Position of speed indicators and termination indicators 32 D.2 Temporary speed restriction warning boards and AWS equipment 33 D.3 Requirements for adjacent temporary speed restrictions 42 D.4 Altering temporary speed restrictions 44
Appendix E Emergency Speed Restrictions 46 E.1 Management of emergency speed restrictions 46 E.2 Provision of speed indicators, warning boards and AWS equipment 46
Appendix X Deceleration Distances 47 Table X-1 Deceleration distance in metres to speed restriction of 10 mph 47 Table X-2 Deceleration distance in metres to speed restriction of 20 mph 48 Table X-3 Deceleration distance in metres to speed restriction of 30 mph 49
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Lineside Signal Spacing and Speed Signage
GK/RT0075
Issue Three
Date September 2014
Page 4 of 58 RSSB
Table X-4 Deceleration distance in metres to speed restriction of 40 mph 50 Table X-5 Deceleration distance in metres to speed restriction of 50 mph 51 Table X-6 Deceleration distance in metres to speed restriction of 60 mph 51 Table X-7 Deceleration distance in metres to speed restriction of 70 mph 52 Table X-8 Deceleration distance in metres to speed restriction of 80 mph 52 Table X-9 Deceleration distance in metres to speed restriction of 90 mph 53 Table X-10 Deceleration distance in metres to speed restriction of 100 mph 53
Appendix Y Key to Symbols Used in this Standard 54
Definitions 55
Abbreviations and Acronyms 57
References 58
Tables Table 1 Exemptions from compatibility check 10
Figures Figure 1 Example of a permissible speed indicator 15 Figure 2 Example of two or more successive reductions in speed 16 Figure 3 Example of a standard differential permissible speed indicator 17 Figure 4 Example of a standard differential permissible speed warning indicator 17 Figure 5 Examples of a non-standard differential permissible speed indicator 18 Figure 6 Examples of a non-standard differential permissible speed warning indicator 18 Figure 7 Example of permissible speed indicator at converging junction 19 Figure 8 Example of permissible speed indicator at diverging junction with
speed reduction on diverging route only 19 Figure 9 Example of permissible speed indicator at diverging junction with
speed reduction (equal speed) on both routes 19 Figure 10 Example of permissible speed indicator at diverging junction with
speed reduction on both routes (different speeds) 20 Figure 11 Example of permissible speed indicator at diverging junction with no straight route 20 Figure 12 Example of permissible speed warning indicator (simple case) 20 Figure 13 Example of permissible speed warning indicator for successive
reductions in speed 21 Figure 14 Example of successive reductions in speed where a further permissible speed warning indicator is required 21 Figure 15 Example of positioning of permissible speed warning indicator where deceleration distance falls within lower speed section 21 Figure 16 Example of positioning of permissible speed warning indicator where
deceleration distance encompasses lower speed section 22 Figure 17 Example of permissible speed warning indicators at converging
junction 22 Figure 18 Example of permissible speed warning indicator for diverging junction
positioned at a signal that displays a cautionary aspect 23 Figure 19 Example of permissible speed warning indicator for speed reduction
on diverging route 23 Figure 20 Example of movement via crossing not requiring temporary speed
restriction signs 25 Figure 21 Example of a commencement and termination indicator 25 Figure 22 Example of an emergency indicator 26 Figure 23 Example of differential speed indicators 26 Figure D-1 Example of speed indicators at converging junction (D.1.2.1) 32 Figure D-2 Example of over trailing end of crossover (D.1.3.2) 33
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GK/RT0075
Issue Three
Date September 2014
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Figure D-3 Example of TSR over facing end of crossover (D.1.3.3) 33 Figure D-4 Example of TSR with a higher permissible speed on approach (D.2.1.3) 34 Figure D-5 Example of TSR with a lower permissible speed on approach (D.2.1.4) 34 Figure D-6 Example of with warning board at commencement of higher
permissible speed (D.2.1.5) 34 Figure D-7 Example of warning board positioning at a converging
junction (D.2.2.1) 35 Figure D-8 Example of warning board positioning at a diverging junction (D.2.3.1) 35 Figure D-9 Example of diverging junction with warning board located at the
facing points (D.2.3.2) 36 Figure D-10 Example of a diverging junction where signal is approach released
from red (D.2.3.3) 36 Figure D-11 Example of a diverging junction where signal is approach released
from a higher aspect (D.2.3.4) 37 Figure D-12 Example of a diverging junction where no previous routing advice is
given (D.2.3.5) 37 Figure D-13 Example of usual positioning of AWS magnets. (D.2.4.1a) 38 Figure D-14 Example of critical positioning of AWS magnets (D.2.4.1c) 38 Figure D-15 Example of warning board at signal with signal AWS electromagnet
disconnected (D.2.4.4) 39 Figure D-16 Example of disconnection of suppressor on existing magnet (D.2.4.5) 39 Figure D-17 Example showing use of AWS cancelling indicator (D.2.4.6 / D.2.4.7) 40 Figure D-18 Another example showing use of AWS cancelling indicator (D.2.4.6 / D.2.4.7) 40 Figure D-19 Example showing provision of a warning board on an unfitted line
leading to a fitted line (D.2.4.8) 40 Figure D-20 Example showing disconnection of AWS in advance of protecting
signal leading to a fitted line (D.2.4.9) 41 Figure D-21 Example showing use of repeater warning boards (D.2.5.2) 41 Figure D-22 Example of a lower TSR followed by a higher TSR (D.3.1.1) 42 Figure D-23 Example of a higher TSR followed by a lower TSR (D.3.2.1) 42 Figure D-24 Another example of a higher TSR followed by a lower TSR (D.3.2.1) 42 Figure D-25 Example of co-incident warning boards for diverging routes (D.3.3.2) 43 Figure D-26 Example of successive speed restrictions on the same line (D.3.3.3) 43 Figure D-27 Example showing a moving TSR where the warning board cannot be
moved (D.4.1.2) 44 Figure D-28 Example of a TSR not imposed or withdrawn early (D.4.2.2) 45 Figure E-1 Example of arrangements for emergency speed restriction (E.2.2) 46
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Supersedes GKRT0075 Iss 2 on 06/12/2014 Superseded by GKRT0075 Iss 4 on 05/12/2015
Railway Group Standard
Lineside Signal Spacing and Speed Signage
GK/RT0075
Issue Three
Date September 2014
Page 6 of 58 RSSB
Part 1 Purpose and Introduction
1.1 Purpose
1.1.1 This document mandates requirements for lineside signal spacing, permissible speeds and temporary and emergency speed restrictions. The requirements are applicable to routes signalled using lineside signalling in accordance with GK/RT0045 Lineside Signals, Indicators, and Layout of Signals, and are not applicable to routes operated using the European Rail Traffic Management System (ERTMS).
1.2 Introduction
1.2.1 Background
1.2.1.1 Lineside signals are provided by the infrastructure manager at locations where it is necessary to provide information about the movement authority to drivers.
1.2.1.2 The movement authority displayed by each lineside signal provides the driver with information about:
a) The distance to go, depicted by the signal aspect.
b) The route that is set and the destination, depicted by the combination of the signal aspect and route indication.
1.2.1.3 Lineside operational signs are provided by the infrastructure manager at locations where it is necessary to display information about permissible speeds and temporary speed restrictions to drivers.
1.2.1.4 Driver competence incorporates:
a) Correct interpretation of lineside signal aspects and route indications.
b) Route knowledge, including knowledge of the signalling layout and permissible speeds.
c) Traction knowledge, including braking performance.
1.2.1.5 The safety of train operations depends on compatibility between the movement authority system, the driver and the train braking system.
1.2.1.6 The minimum signalling braking distances in this document are compatible with the braking performance data for traction and rolling stock, as set out in the following Railway Group Standards:
GM/RT2041 Braking System Requirements and Performance for Trailer Coaching Stock
GM/RT2042 Braking System Requirements and Performance for Traction Units
GM/RT2043 Braking System and Performance for Freight Trains
GM/RT2044 Braking System Requirements and Performance for Multiple Units
GM/RT2045 Braking Principles for Rail Vehicles.
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Issue Three
Date September 2014
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1.2.1.7 With respect to lineside signal spacing, the interface between the infrastructure manager and railway undertakings is concerned with:
a) Compatibility with train braking performance, so that when the driver observes a normal sequence of signal aspects (that is, the expected aspect sequence compliant with the requirements of GK/RT0045) leading up to a signal displaying a stop aspect, the train can decelerate from the permissible speed and stop within the distance available from the first cautionary aspect to the stop signal.
b) The driver’s ability to perceive and remember information about the movement authority as part of the overall driving task.
1.2.1.8 Loss of compatibility in either of these areas is a causal factor of a signal passed at danger (SPAD).
1.2.2 Principles
1.2.2.1 The meaning of lineside signal aspects and the responsibility that train drivers have to control the speed of the train with respect to permissible speeds and the aspects displayed by signals is set out in Handbook RS521.
1.2.2.2 Compatibility between train braking performance and lineside signal spacing is essential so that drivers consistently have sufficient distance to bring the train to a stand at the associated stop signal when a caution signal aspect is displayed.
1.2.2.3 Consistency of signal spacing assists drivers by enabling them readily to interpret the information presented by the signal aspect sequences in terms of the required stopping position of the train, thus reducing the potential for misleading drivers.
1.2.2.4 Permissible speeds applicable to each type of train over each section of line are specified in the Sectional Appendix. Speed signs are provided and positioned consistently to provide drivers with clear information on permissible speeds, and to provide adequate warnings of significant speed reductions and temporary and emergency speed restrictions.
1.2.3 Related requirements in other documents
1.2.3.1 The following Railway Group Standards contain requirements that are relevant to the scope of this document:
GE/RT8000 Rule Book
GE/RT8012 Controlling the Speed of Tilting Trains Through Curves
GE/RT8075 AWS and TPWS Interface Requirements
GE/RT8037 Signal Positioning and Visibility
GI/RT7033 Lineside Operational Safety Signs
GK/RT0045 Lineside Signals, Indicators, and Layout of Signals
GK/RT0192 Level Crossing Interface Requirements
GM/RT2041 Braking System Requirements and Performance for Trailer Coaching Stock
GM/RT2042 Braking System Requirements and Performance for Traction Units
GM/RT2043 Braking System and Performance for Freight Trains
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Lineside Signal Spacing and Speed Signage
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Date September 2014
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GM/RT2044 Braking System Requirements and Performance for Multiple Units
GM/RT2045 Braking Principles for Rail Vehicles.
1.2.4 Supporting documents
1.2.4.1 GK/GN0675 Guidance on Lineside Signal Spacing and Speed Signage.
1.3 Approval and authorisation of this document
1.3.1 The content of this document was approved by Control Command and Signalling (CCS) Standards Committee on 06 March and 2014.
1.3.2 This document was authorised by RSSB on 04 August 2014.
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Date September 2014
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Part 2 Requirements for Lineside Signal Spacing
2.1 Compatibility requirements for lineside signal spacing
2.1.1 GE/RT8270 sets out the process for the assessment of compatibility that is required whenever a material change is to be made that affects the interface between the signalling system and railway undertakings or any infrastructure managers that operate stations.
2.1.2 The assessment of compatibility shall check that the signalling spacing data used to determine minimum signalling braking distances (further requirements are set out in 2.3) is compatible with all of the following:
a) The types of rolling stock that will be operated on the route.
b) The maximum speeds that the rolling stock will be authorised to operate on the route.
c) The maximum attainable speeds of the rolling stock, where this is used to determine minimum signalling braking distances.
2.1.3 The assessment of compatibility shall check that the actual signalling braking distance is compatible with the SPAD risk mitigation measures that will be put in place by the railway undertakings, where any of the following apply:
a) There is more than 50% excess signalling braking distance, except where an exemption applies (see Table 1).
b) A signal has an actual signalling braking distance less than 67% of the actual signalling braking distance of the preceding signal(s) on the same line.
c) In four-aspect signalling areas, where the distance between the signals displaying the single yellow aspect and the red aspect is less than one third of the distance between the signals displaying the double yellow aspect and the red aspect.
Situation
Scope of compatibility check where actual signal spacing exceeds the
minimum signalling braking distance by more than 50%
a Where signals control movements in the same direction on parallel lines that have different permissible speeds, and signals are positioned adjacent to each other to minimise the risk of driver misread or disregard
The compatibility check is only required for signalling braking distances on the higher speed line.
Signal braking distances on the lower speed line are exempt from the compatibility check
b Where trains join a higher speed line at a converging junction from a lower speed line or start from a siding, loop or another platform line
The compatibility check is only required for signalling braking distances on the higher speed line.
Signal braking distances for train movements from the lower speed line are exempt from the compatibility check
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Lineside Signal Spacing and Speed Signage
GK/RT0075
Issue Three
Date September 2014
Page 10 of 58 RSSB
Situation
Scope of compatibility check where actual signal spacing exceeds the
minimum signalling braking distance by more than 50%
c Where trains start from a platform on a through line
The compatibility check is only required for signalling braking distances associated with non-stopping trains.
Signal braking distances for train movements that start from rest are exempt from the compatibility check
d Where the signal spacing is designed using particular signalling braking distance data (for example, Appendix A for a mixed traffic line)
The compatibility check is only required for signalling braking distances associated with the appendix to which the line is signalled
e Where the signal spacing is designed to Appendices B or C, and a differential speed restriction is applied to enable traffic with an inferior braking characteristic to operate
The compatibility check is only required for signalling braking distances associated with the appendix to which the line is signalled
f At the approach to buffer stops at terminal stations or at bay platforms
The compatibility check does not apply to the spacing distance between the approach signals and the buffer stops
Table 1 Exemptions from compatibility check
2.2 Requirement for signal spacing
2.2.1 The position of lineside signals shall be compatible with the braking performance of rolling stock so that trains moving at the permissible speed (or attainable speed in the circumstances set out in 2.7) can stop within the actual signalling braking distance.
2.3 Determining minimum signalling braking distances
2.3.1 Minimum signalling braking distances shall be determined using the data set out in Appendices A to C, as set out in 2.3.3 to 2.3.5. The associated guidance note (GK/GN0675) contains signalling braking distance data in imperial (yards) as well as metric units. Additionally, in respect of Appendices A, B and C, these data are included in graphical form.
2.3.2 Additional requirements for assessing compatibility of the data used and rolling stock performance are set out in 2.1.2.
2.3.3 The minimum signalling braking distance shall be established from Appendix A, based on the maximum permissible speed for freight trains (taking account of standard differential speeds and speed limits imposed by special instructions).
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2.3.4 Where passenger trains (including those with enhanced braking where specific non-standard differentials are not provided) are authorised to travel at speeds greater than the permissible freight train speed (by means of standard or non-standard differential speeds), the signalling braking distance shall be equal to or exceed the distance derived from Appendix B, for the maximum permissible speed of those trains.
2.3.5 Where passenger trains with enhanced braking are authorised to travel at speeds greater than the permissible freight train speed (by means of non-standard differential speeds), the signalling braking distance shall be equal to or exceed the distance derived from Appendix C, for the maximum permissible speed of passenger trains with enhanced braking.
2.3.6 The minimum signalling braking distance shall be determined using:
a) The permissible speed at the signal displaying the first cautionary aspect, and
b) The average gradient of the line between the signals displaying the first cautionary aspect and the stop aspect.
2.3.7 For gradients between two values shown in the tables, the signalling braking distance for that gradient shall be calculated by linear interpolation between the signalling braking distances for the two adjacent gradient values.
2.3.8 Where a falling gradient varies and the mean gradient is 1 in 200 or steeper, the minimum signalling braking distance to be used shall be the shorter of either:
a) The distance for the mean gradient plus 10% of that distance, or
b) The distance for the steepest falling gradient.
2.4 Acceptable variations in signal spacing
2.4.1 The position of signals shall be designed so that the actual signalling braking distance is no less than the minimum signalling braking distance.
2.4.2 Wherever practicable, the position of signals shall be designed so that excess signalling braking distance does not exceed 50%.
2.4.3 Additional requirements for assessing compatibility of actual signalling braking distances and train operations, where there is more than 50% excess signalling braking distance, are set out in 2.1.3.
2.5 Consistency of signalling braking distances
2.5.1 Variation in the excess signalling braking distances between successive signals shall be kept to a minimum in order to control the risk associated with signals passed at danger (SPAD).
2.5.2 Additional requirements for assessing compatibility of variation of excess signalling braking distances and train operations are set out in 2.1.3.
2.6 Four-aspect signalling
2.6.1 In areas of 4-aspect signalling, the distance between the single yellow aspect and the red aspect shall be no less than one-third of the actual signalling braking distance between the double yellow aspect and the red aspect, unless the criteria set out in either 2.6.2 or 2.6.3 apply.
2.6.2 It is permissible for the distance between the single yellow aspect and the red aspect to be reduced to no less than one-third of the required minimum signalling braking distance between the double yellow aspect and red aspect.
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Lineside Signal Spacing and Speed Signage
GK/RT0075
Issue Three
Date September 2014
Page 12 of 58 RSSB
2.6.3 It is permissible for mid-platform signals to be located so that the distance from the single yellow aspect at the mid-platform signal to the red aspect at the platform starting signal is less than one-third of the required minimum signalling braking distance between the double yellow aspect and the red aspect. In this case the permissible speed and the location of the mid-platform signal shall be configured to comply with all of the following requirements:
a) The distance between the running-in platform ramp and the platform starting signal is greater than the minimum signalling braking distance at the permissible speed.
b) The mid-platform signal is sighted so that it is visible to the driver from the running-in platform ramp, as set out in GE/RT8037.
c) The platform starting signal is sighted so that it is visible to the driver from the mid-platform signal, as set out in GE/RT8037.
2.6.4 Additional requirements for assessing compatibility of four-aspect signal spacing and train operations are set out in 2.1.2.
2.7 Use of attainable speed to determine minimum signal spacing
2.7.1 Where attainable speed is used to determine minimum signalling braking distances, the maximum attainable speed shall be derived using current acceleration data for the appropriate types of rolling stock. Additional requirements for assessing compatibility of minimum signalling braking distances and rolling stock performance are set out in 2.1.2.
2.7.2 On a 4-aspect signalled line, at a converging junction, the distance between the first signal beyond the junction and the next stop signal shall be compatible with both of the following:
a) The permissible speed and aspect sequence through the junction on the straight route , and
b) The permissible speed and aspect sequence on the converging route.
2.7.3 Where the converging route is a 3-aspect signalled line and the permissible speed through the convergence is lower than the permissible speed on the straight route, one of the following shall apply:
a) The attainable speed at the first (4-aspect) signal beyond the junction (taking account of any permissible speed restriction through the junction) shall be compatible with the actual signalling braking distance to the next signal so that the train can stop when the signal is displaying a single yellow aspect, or
b) The last signal on the converging route shall be a 4-aspect signal.
2.7.4 Where there is signalling braking distance from the commencement of an existing reduction of permissible speed and the stop signal, it is permissible to use the attainable speed at the first caution.
2.8 Requirements at infrastructure manager boundaries
2.8.1 The requirements for signal spacing set out in this document shall apply also to the transitions between different signalling systems that are part of Network Rail managed infrastructure.
2.8.2 Where a signalling braking distance crosses a boundary between infrastructure managers, the minimum distance between a caution signal and the associated stop signal (or equivalent end of movement authority) shall be determined using the signalling braking criteria specified by the infrastructure manager controlling the stop signal (or responsible for end of movement authority).
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Railway Group Standard
GK/RT0075
Issue Three
Date September 2014
RSSB Page 13 of 58
Part 3 Requirements for Signing of Permissible Speeds and Speed Restrictions
3.1 Compatibility requirements for signing of permissible speeds and speed restrictions
3.1.1 GE/RT8270 sets out the process for the assessment of compatibility that is required whenever a material change is to be made that affects the interface between the signalling system and railway undertakings or any infrastructure managers that operate stations.
3.1.2 The assessment of compatibility shall check that permissible speeds and temporary speed restrictions are compatible with existing and planned train operations on each route, including a check of all of the following:
a) The permissible speed profile.
b) The configuration and position of permissible speed indicators and permissible speed warning indicators.
c) The provision of additional speed signs, where this is a permitted option to manage operational risk, including:
i) Additional permissible speed warning indicators (see 3.3.1).
ii) Repeater permissible speed indicators at converging junctions (see 3.3.3).
d) Where the nature of engineering work results in complex signage arrangements. The proposed configuration and position of temporary speed indicators and warning boards and the arrangements for their implementation and withdrawal.
e) The configuration and position of signs that display standard and non-standard differential speeds, where trains compatible with the signalling braking distances set out in Appendices B and C are authorised to operate at higher permissible speeds (see 3.3.2).
f) The omission of differential speed signs, where differential speeds are implemented by instruction (see 3.3.1).
g) The display of metric speed information, where this is required (see 3.2.1).
h) The overall presentation of information to the driver (further requirements are set out in 3.2.2).
3.1.3 The assessment of compatibility shall check that the deceleration distances (see 3.2.3) used, which are the minimum spacing distances between the warning indicator and the speed indicator, are compatible with all of the following:
a) The types of rolling stock that will be operated on the route.
b) The maximum speeds that the rolling stock will be authorised to operate on the route.
c) The maximum attainable speeds of rolling stock, where these are used to determine the signal spacing.
d) The permissible speed(s) on every signalled approach to the speed reduction, including differential speeds which are authorised for different types of rolling stock.
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GK/RT0075
Issue Three
Date September 2014
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e) The speed reduction(s) required on every signalled approach.
f) The applicable speed restriction, including differential speeds.
g) The average gradient on the approach to the speed indicator/board.
3.2 Requirements for permissible speeds and temporary speed restrictions
3.2.1 Display of speed information
3.2.1.1 The infrastructure manager shall provide lineside operational safety signs to display permissible speeds and temporary speed restriction information, applicable to each running line, for each direction that trains can be operated under signalled movement authorities for main running movements.
3.2.1.2 Speed signs shall display speed information in units of miles per hour.
3.2.1.3 Where trains are operated using speedometers calibrated in kilometres per hour, speed signs shall also display speed information in units of kilometres per hour.
3.2.1.4 Speed signs that display differential speeds shall display the lower (or lowest) speed above the higher speed(s).
3.2.1.5 Speed signs shall be positioned on the left-hand side of the line in the direction of travel, unless they cannot be accommodated there.
3.2.1.6 Speed signs shall be configured so that all of the applicable speeds (including differential speeds) over the same section of track are displayed together at the same position and location. It is permitted for nominally co-located signs to be separated by a short distance where readability would not be impaired.
3.2.2 Overall presentation of information to the driver
3.2.2.1 Speed signs and associated automatic warning system (AWS) equipment shall be positioned so that the totality of information (including lineside signs, signal aspects, indications and lineside equipment) displayed to the train driver is not liable to cause confusion.
3.2.2.2 Where train protection systems are in use, the position of speed signs shall be compatible with the warning and intervention functionality of these systems so that a driver obeying the lineside signs does not receive unwarranted warnings or interventions.
3.2.3 Deceleration distances
3.2.3.1 Where attainable speed is used to determine the deceleration distance (only permitted for temporary speed restrictions), the maximum attainable speed shall be derived using current acceleration data for the appropriate types of rolling stock. Additional requirements for assessing compatibility of deceleration distances and rolling stock performance are set out in 3.1.3.
3.2.3.2 Where differential speeds are associated with a speed reduction to a lower permissible speed or a temporary speed restriction (whether they are applicable to the permissible speed on the approach, the lower permissible speed or temporary speed restriction, or both), the deceleration distance shall be determined for each type of train, taking account of:
a) The applicable speeds for that train, and
b) The longest deceleration distance required.
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3.2.3.3 Deceleration distances shall be determined using one of the following:
a) The deceleration data set out in Appendix X which is compatible with Appendix A (composite data for all trains).
b) The signalling braking distance, where minimum signalling braking distances have been determined using Appendix B (composite data for passenger trains), and the deceleration distance derived from Appendix X is greater than the minimum signalling braking distance.
c) The signalling braking distance, where minimum signalling braking distances have been determined using Appendix C (data for trains with enhanced braking), and the deceleration distance derived from Appendix X is greater than the minimum signalling braking distance.
3.2.3.4 Appendices B or C shall only be used to determine deceleration distances for permissible speeds and temporary speed restrictions where all of the trains that operate over the route have a braking performance that is compatible with the required reduction in speed, taking account of the following factors:
a) The permissible speeds, including any enhanced permissible speeds and differential speeds, and
b) The authorised speed limits applicable to each category and type of train.
3.3 Signs for permissible speeds
3.3.1 Position and sighting of signs
3.3.1.1 A signal sighting committee (as set out in GE/RT8037) shall agree the position and sighting of:
a) Permissible speed indicators.
b) Permissible speed warning indicators.
3.3.1.2 Permissible speed indicator(s) shall:
a) Display the relevant permissible speed(s).
b) Be provided for every increase or decrease of permissible speed, except where differential speeds applying to certain types of train are implemented by instruction. This applies where speed is required to be restricted for particular types of train that do not constitute a recognised category for which differential speed signs are specified in the Rule Book.
c) Be positioned where the change of permissible speed occurs (see Figure 1).
40
4090
Figure 1 Example of a permissible speed indicator
3.3.1.3 Permissible speed indicators shall be provided at converging and diverging junctions in accordance with 3.3.3 and 3.3.4.
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3.3.1.4 Except where the criteria in 3.3.1.5 apply, a permissible speed warning indicator shall be provided on all signalled approaches to each permissible speed reduction, where either:
a) The permissible speed on the approach, including any differential speed, is 60 mph or greater and the required speed reduction is one-third or more, taking account of any differential permissible speeds that apply, or
b) There are two or more successive reductions in permissible speed within a distance of 3.2 km (2 miles), none of which individually represents a reduction of one-third, but which together require a speed reduction of one-third or more from an approach speed of 60 mph or greater (see Figure 2).
Figure 2 Example of two or more successive reductions in speed
3.3.1.5 Permissible speed warning indicators shall not be provided for:
a) A speed reduction over a diverging route where the signalling system is configured to display signal aspects that provide for the required speed reduction (see 3.3.7).
b) A speed reduction over a level crossing where a Level Crossing Warning Sign (St Georges Cross) is provided.
3.3.1.6 Where provided, permissible speed warning indicators shall be positioned in accordance with 3.3.5, 3.3.6, 3.3.7 using the appropriate deceleration distance set out in 3.2.3.3.
3.3.1.7 Only one permissible speed warning indicator shall be provided on each approach to a permissible speed indicator, unless an additional indicator is required to mitigate safety risk and will not cause confusion to drivers. Further requirements are set out in 3.1.2.
3.3.2 Display of differential permissible speeds
3.3.2.1 Permissible speed indicators and permissible speed warning indicators shall display a maximum of three differential speeds (applicable to different categories of trains), including standard and non-standard differential speeds. For the purposes of this section, an enhanced permissible speed as defined in GE/RT8012 shall be considered as a non-standard differential speed. The only permitted combinations are:
a) Two displayed speeds, each for one of two standard categories of train, where standard differential speeds apply.
b) One displayed speed for a standard category of train and either one or two displayed non-standard speeds applicable to the train categories set out in GE/RT8000 Rule Book module SP.
50 65 65 90
125 90
P
90 65 50
125
< 3.2 km (2 miles)
Note: Depending on spacing of speed reductions and relevant deceleration distances, the warning indicator for the second speed reduction could fall before the speed indicator for the first speed reduction
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c) Two displayed speeds for the two standard categories of train (standard differential speeds), together with one displayed non-standard differential speed applicable to a train category set out in GE/RT8000 Rule Book module SP.
3.3.2.2 Further requirements applicable to differential speeds are set out in 3.1.2.
3.3.2.3 Where standard differential speeds apply, the two speeds shall be displayed on a single permissible speed indicator (see Figure 3) and, where a warning indicator is provided, on a single permissible speed warning indicator (see Figure 4).
20
20/509050
Figure 3 Example of a standard differential permissible speed indicator
20
50
Figure 4 Example of a standard differential permissible speed warning indicator
3.3.2.4 Non-standard differential permissible speeds shall be displayed by a separate speed sign, which shall incorporate an indication of the applicable train category. The meanings of letter abbreviations for non-standard speeds are set out in Rule Book Module SP. The classes of train that apply in a given situation are set out in the Sectional Appendices.
3.3.2.5 A non-standard permissible speed indicator shall be mounted on the same post as the associated standard permissible speed indicator (see Figure 5) and:
a) Where the non-standard speed is higher than the standard speed(s), it shall be displayed below the standard speed(s).
b) Where the non-standard speed is lower than the standard speed(s), it shall be displayed above the standard speed(s).
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60
60/9090
HST90
50/75/9090
HST90
5075
75/90 90
90
CS 75
Figure 5 Examples of a non-standard differential permissible speed indicator
3.3.2.6 Where a permissible speed warning indicator is required, non-standard differential speeds shall be displayed by a separate speed sign, which shall incorporate an indication of the applicable train category. Further requirements about train categories are set out in GE/RT8000 Rule Book.
3.3.2.7 A non-standard permissible speed warning indicator shall be mounted on the same post as the standard permissible speed warning indicator (see Figure 6) and:
a) Where the non-standard speed is higher than the standard speed(s), it shall be displayed below the standard speed(s).
b) Where the non-standard speed is lower than the standard speed(s), it shall be displayed above the standard speed(s).
60HST90
HST90
5075
90
CS 75
Figure 6 Examples of a non-standard differential permissible speed warning indicator
3.3.3 Permissible speed indicators at converging junctions
3.3.3.1 A permissible speed indicator shall be provided at converging junctions if the permissible speed beyond the converging junction is different from the permissible speed on the higher speed route (see Figure 7).
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70
20
90
90
Figure 7 Example of permissible speed indicator at converging junction
3.3.3.2 It is permissible to provide a miniature permissible speed indicator as a repeating sign immediately after a converging junction, where all of the following apply:
a) The permissible speed beyond the junction is the same as the permissible speed of the approach on the higher speed route, and
b) The permissible speed beyond the junction is higher than that on the converging route, and
c) The junction is not located within the deceleration distance approaching a lower speed for which warning has already been given.
3.3.4 Permissible speed indicators at diverging junctions
3.3.4.1 A permissible speed indicator with an arrow indicating the direction of the diverging (lower speed) route shall be provided immediately before a diverging junction (including a facing crossover) over which there is a reduction in permissible speed (see Figure 8). Where the permissible speed of the straight route does not change at the junction, a speed indicator shall not be provided for the straight route.
90
50
90
50
Figure 8 Example of permissible speed indicator at diverging junction with speed reduction on diverging route only
3.3.4.2 Where a lower permissible speed applies equally to both routes, a single permissible speed indicator shall be provided without directional arrows (see Figure 9).
40
40
90
40
Figure 9 Example of permissible speed indicator at diverging junction with speed reduction (equal speed) on both routes
3.3.4.3 Where different permissible speeds commence for each route at a diverging junction or crossover, two permissible speed indicators shall be positioned side-by-side. Arrow(s) shall be incorporated into the sign to indicate any divergence (see Figures 10 and 11).
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125
40
90
4090
Figure 10 Example of permissible speed indicator at diverging junction with speed reduction on both routes (different speeds)
4040
50
50
125
Figure 11 Example of permissible speed indicator at diverging junction with no straight route
3.3.5 Positioning of permissible speed warning indicators
3.3.5.1 Where provided, permissible speed warning indicators shall:
a) Be positioned as close as practicable to (but not less than) the deceleration distance from the permissible speed indicator, taking account of the longest deceleration distance required (see Figure 12), and
b) Not be positioned between a signal or other sign applicable in the same direction of travel and the AWS equipment associated with that signal or sign.
Figure 12 Example of permissible speed warning indicator (simple case)
3.3.5.2 Where two permissible speed indicators are located at the same position (for example, at a diverging junction) and permissible speed warning indicators are required for both, the position of the permissible speed warning indicators shall be determined using the greatest deceleration distance required.
3.3.5.3 Where the circumstances set out in 3.3.1.4b) apply, the deceleration distance used to position the permissible speed warning indicator shall be determined using the permissible speed applicable prior to the commencement of the series of reductions in speed (see Figure 13).
DD 70–40
40
40 70
40
70
P
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DD 125-65
Figure 13 Example of permissible speed warning indicator for successive reductions in speed
3.3.5.4 Where further permissible speed reductions occur beyond a reduction for which a permissible speed warning indicator and associated AWS magnet is provided, these shall be assessed separately. A further permissible speed warning indicator shall be provided if the criteria set out in 3.3.1.4 are met (see Figure 14).
50658080
125
P
80 65 50
125
< 3.2 km (2 miles)
50
65
P
125
DD 125–80 DD 80–50
Figure 14 Example of successive reductions in speed where a further permissible speed warning indicator is required
3.3.5.5 Where exceptionally the speed profile is such that that the deceleration distance would either:
a) Position a permissible speed warning indicator within a section of line with a lower permissible speed than that immediately preceding the speed reduction (see Figure 15), or
b) Encompass a section of line with a lower permissible speed (see Figure 16), and this lower speed is equal to or less than the speed displayed on the permissible speed warning indicator, one of the following arrangements shall be used:
c) The permissible speeds shall be adjusted to avoid this arrangement (preferred), or
d) The permissible speed warning indicator shall be positioned at the end of the lower speed section, beneath the permissible speed indicator for the higher speed (non-preferred).
125 40
40
40
40
70
70
40
40
DD 70–40
40
Figure 15 Example of positioning of permissible speed warning indicator where deceleration distance falls within lower speed section
50 65 65 90
125 90
P
90 65 50
125
< 3.2 km (2 miles)
Note: depending on spacing of the speed reductions and relevant deceleration distances, the warning indicator for the second speed reduction could fall before the speed indicator for first speed reduction
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125 30
30
70
70
40
40 40
DD 70–40
125
40
Figure 16 Example of positioning of permissible speed warning indicator where deceleration distance encompasses lower speed section
Note: The arrangements shown in Figures 15 and 16 are non-preferred. Where practicable, permissible speeds should be specified to obviate such arrangements.
3.3.5.6 If the permissible speed on the preceding lower speed section is higher than the permissible speed displayed on the permissible speed warning indicator and there is an intermediate higher permissible speed, the permissible speed warning indicator shall be positioned either:
a) At not less than the deceleration distance, or
b) At the end of the lower speed section, beneath the permissible speed indicator for the higher speed
whichever is the greater distance. In this case the intermediate higher permissible speed shall be disregarded when determining the position of the permissible speed warning indicator.
3.3.5.7 Further requirements for checking the provision, position and configuration of permissible speed warning indicators are set out in 3.1.2.
3.3.6 Permissible speed warning indicators at converging junctions
3.3.6.1 Where the criteria set out in 3.3.1.4 apply at converging junctions, permissible speed warning indicators shall be provided:
a) On each signalled approach to a permissible speed indicator (see Figure 17).
b) So that all approaching trains receive one warning for each permissible speed reduction.
4040
125 125
P
P40
90DD 90–40
DD 125–40
Note: 125 repeater sign omitted intentionally (3.3.3.2 refers)
Figure 17 Example of permissible speed warning indicators at converging junction
3.3.7 Permissible speed warning indicators at diverging junctions
3.3.7.1 A permissible speed warning indicator incorporating a directional arrow shall be provided to indicate a permissible speed on a diverging route over or beyond a diverging route ahead, where:
a) The junction signal is not approach controlled from red (see GK/RT0045), and
b) The required speed reduction meets the criteria set out in 3.3.1.4
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3.3.7.2 Where a permissible speed warning indicator incorporating a directional indication is positioned at a signal that displays a cautionary aspect for the diverging route to which the warning indicator applies:
a) The caution indication given by the AWS magnet associated with the signal shall also apply to the warning indicator.
b) A separate AWS magnet shall not be provided for the warning indicator (see Figure 18).
40
125
DD 125–40 Not approach controlled from red
125
4040
>
Figure 18 Example of permissible speed warning indicator for diverging junction positioned at a signal that displays a cautionary aspect
3.3.7.3 Where a permissible speed warning indicator incorporating a directional indication is not positioned at a signal that displays only a cautionary aspect for the diverging route to which the warning indicator applies:
a) A separate AWS magnet shall be provided for the permissible speed warning indicator, and
b) The AWS magnet shall be suppressed when the junction signal and any intervening signals between the permissible speed warning indicator and the junction signal have been cleared for a route for which the warning indicator does not apply.
3.3.7.4 A permissible speed warning indicator, incorporating a directional arrow, shall be positioned adjacent to the permissible speed indicator (with directional arrow) at a diverging junction, or crossover (see Figure 19) where:
a) A reduction in permissible speed on the diverging route beyond the diverging junction (or crossover) requires a permissible speed warning indicator, or
b) The deceleration distance would position the permissible speed warning indicator in the vicinity of the diverging junction or crossover, or
c) Either it is not practicable to locate the warning indicator within the diverging junction or crossover, or it is necessary to make it clear to which line the warning indicator applies.
90
20
6060
20
DD 60–20>60
Figure 19 Example of permissible speed warning indicator for speed reduction on a diverging route
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3.3.8 Provision of AWS magnets for permissible speed warning indicators
3.3.8.1 An AWS magnet shall be provided on the approach to all permissible speed warning indicators provided to satisfy the criteria set out in 3.3.1.4, except
a) Where the AWS magnet associated with a signal displaying a cautionary aspect is configured to provide an equivalent warning (see 3.3.7.2).
b) On lines not fitted with AWS.
c) In AWS gap areas.
d) In respect of additional warning indicators.
3.3.8.2 The AWS magnet shall:
a) Be positioned 180 m on the approach to the permissible speed warning indicator.
b) Be positioned not less than 4 seconds running time from any other AWS equipment.
c) Not be positioned between any other AWS equipment and its associated signal, board or indicator.
The constraints in b) and c) do not apply to other AWS equipment which is provided for movements in the opposite direction and which is suppressed for movements in the direction to which the permissible speed warning indicator applies.
3.3.8.3 The AWS magnet shall be configured to generate an AWS caution indication in the driving cab.
3.3.8.4 The AWS magnet shall be suppressed for signalled running movements for which it does not apply, unless AWS cancelling indicators are provided (see GE/RT8035: Automatic Warning System (AWS)).
3.3.9 Publication of alterations of permissible speeds
3.3.9.1 Details of alterations to permissible speeds shall be published in:
a) The Weekly Operating Notice (WON), prior to implementation, and
b) The next available Periodical Operating Notice (PON), pending re-issue of the appropriate Table A entry in the Sectional Appendix.
3.4 Provision of signs for temporary and emergency speed restrictions
3.4.1 Commencement and termination indicators and warning boards
3.4.1.1 The commencement of each temporary speed restriction shall be indicated by a speed indicator displaying the required speed(s) for all signalled movements entering the speed restriction (see Figure 21), except where:
a) Movements cross over a temporary speed restriction, via a ladder or diamond crossing, and
b) The permissible speed for the movement via a ladder or diamond crossing is less than or equal to that of the temporary speed restriction (see Figure 20).
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T
20
20
100
20
20
50
110
110
Figure 20 Example of movement via crossing not requiring temporary speed restriction signs
3.4.1.2 Except in the case of abutting restrictions (see Appendix D, D.3), a termination indicator, displaying the letter ‘T’, shall be positioned at the end of each temporary speed restriction (see Figure 21).
Figure 21 Example of a commencement and termination indicator
3.4.1.3 Speed indicators shall be positioned in accordance with Appendix D.
3.4.1.4 Warning boards shall be provided for all signalled running movements towards temporary and emergency speed restrictions, except where:
a) Trains always start from rest (for example, a siding or terminal station platform line) and the commencement of the speed restriction is less than 300 m ahead, or
b) The temporary speed restriction commences at an increase of permissible speed, and the speed of the TSR is the same as, or higher than, the speed on the approach.
In these cases the WON shall specify:
‘A warning board is not provided on the ___ line for trains proceeding to the ___ line for the temporary speed restriction at ___ miles ___ chains.’
3.4.1.5 Warning boards shall be positioned in accordance with Appendix D, using the deceleration distance criteria in Appendix X.
3.4.1.6 Only one warning board shall be provided on each approach to a temporary speed restriction, except where repeater warning boards are provided in accordance with Appendix D, D.2.5.
3.4.1.7 Where an emergency speed restriction is to be imposed, an emergency indicator shall be provided in addition to the warning board (see Figure 22), and positioned in accordance with Appendix E.
Commencement of Speed Restriction Indicator
(Speed in mph)
Termination of Speed
Restriction Indicator
20 90 90
20 T
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90 90
20
90
emergency indicator
Figure 22 Example of an emergency indicator
3.4.1.8 Speed signs provided for temporary and emergency speed restrictions shall be positioned on the left-hand side of the line in the direction of travel, except where:
a) It is not practicable to accommodate a speed sign on the left-hand side of the line, and
b) The applicability of a sign positioned on the right-hand side of the line is unambiguous.
3.4.1.9 Where temporary speed restriction speed indicators or warning boards are positioned to the right of the track in the direction of travel, the WON shall specify either:
‘The temporary speed restriction equipment for trains travelling in the up/down direction on ___ line between ___ miles ___ chains and ___ miles ___ chains is situated to the right of the track,’ or
‘The warning board _________________ (for example, IN THE TUNNEL) on the ___ line at ___ miles ___ chains is situated to the right of the track.’
3.4.2 Display of differential speeds at temporary speed restrictions
3.4.2.1 Speed indicators and warning boards shall only display the two standard differential speeds.
3.4.2.2 The two standard differential speeds shall be displayed (see Figure 23) using:
a) A speed indicator displaying both speeds.
b) A warning board displaying both speeds.
T
Differential Speeds (20 over 50) 20
50 20
50
20/50 90 90
Figure 23 Example of differential speed indicators
3.4.3 Provision of AWS permanent magnets for temporary speed restriction warning boards
3.4.3.1 An AWS magnet shall be provided on the approach to:
a) All warning boards, in accordance with Appendix D.
b) All emergency indicators, in accordance with Appendix E.
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3.4.3.2 Except where the criteria in Appendix D, D.2.4 apply, the AWS magnet shall:
a) Be positioned 180 m on the approach to the warning board or emergency indicator.
b) Be positioned not less than 4 seconds running time from any other AWS equipment.
c) Not be positioned between any other AWS equipment and its associated signal, board or indicator.
The constraints in b) and c) do not apply to other AWS equipment which is provided for movements in the opposite direction and which is suppressed for movements in the direction to which the permissible speed warning indicator applies.
3.4.3.3 AWS magnet(s) shall be configured to generate an AWS caution indication in the driving cab.
3.4.4 Publication of temporary speed restrictions
3.4.4.1 Details of temporary speed restrictions shall be published in the WON prior to implementation.
3.4.4.2 Where this is not practicable, the speed restriction shall be implemented as an emergency speed restriction, as set out in Appendix E.
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Part 4 Application of this Document
4.1 Application - infrastructure managers
4.1.1 Scope
4.1.1.1 The requirements in Part 2 of this document apply to all work that affects the design of new or altered lineside signalling arrangements relating to signal spacing. Where it is known, or becomes known, that existing lineside signal spacing does not comply with the requirements of this document, action to bring it into compliance is required when the signalling is renewed, the signal spacing is modified or permissible speeds are amended.
4.1.1.2 The requirements in Part 3 of this document apply to alterations to the speed profile, including the speed signage for temporary and emergency speed restrictions. Where it is known, or becomes known, that existing lineside speed signage does not comply with the requirements of this document, action to bring it into compliance is required when the speed signage is modified or renewed.
4.1.2 Exclusions from scope
4.1.2.1 There are no exclusions from the scope specified in 4.1.1 for infrastructure managers.
4.1.3 General compliance date for infrastructure managers
4.1.3.1 This Railway Group Standard comes into force and Parts 2 and 3 are to be complied with from 06 December 2014.
4.1.3.2 After the compliance dates or the date by which compliance is achieved if earlier, infrastructure managers are to maintain compliance with the requirements set out in this Railway Group Standard. Where it is considered not reasonably practicable to comply with the requirements, authorisation not to comply should be sought in accordance with the Railway Group Standards Code.
4.1.4 Exceptions to general compliance date
4.1.4.1 There are no exceptions to the general compliance date specified in 4.1.3 for infrastructure managers.
4.2 Application - railway undertakings
4.2.1 There are no requirements applicable to railway undertakings.
4.3 Health and safety responsibilities
4.3.1 Users of documents published by RSSB are reminded of the need to consider their own responsibilities to ensure health and safety at work and their own duties under health and safety legislation. RSSB does not warrant that compliance with all or any documents published by RSSB is sufficient in itself to ensure safe systems of work or operation or to satisfy such responsibilities or duties.
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Appendix A Signalling Braking Distance Data for all Trains
The content of this appendix is mandatory.
A.1 Composite table for all trains (metres)
DISTANCE (METRES)
GRADIENT (mm/m)
Rising Falling
INITIAL SPEED (mph)
20
(1 in 50)
15
(1 in 67)
10
(1 in 100)
5
(1 in 200)
2.5
(1 in 400)
Level
Level
2.5
(1 in 400)
5
(1 in 200)
10
(1 in 100)
15
(1 in 67)
20
(1 in 50)
10 62 65 69 75 78 82 89 97 118 146 190
15 100 107 117 128 136 144 156 168 200 244 311
20 155 165 180 200 210 220 238 255 295 365 480
25 220 235 260 290 303 325 345 375 445 575 770
30 295 315 350 390 418 445 485 530 645 820 1305
35 375 405 445 505 540 585 640 715 925 1265 2046
40 455 505 570 660 730 795 895 990 1300 1740 2046
45 580 650 740 855 945 1035 1185 1315 1520 1740 2046
50 629 684 747 855 945 1035 1185 1315 1520 1740 2046
55 704 760 824 899 955 1035 1185 1315 1520 1740 2046
60 776 833 896 970 1020 1070 1190 1315 1520 1740 2046
65 810 870 938 1019 1066 1116 1220 1315 1520 1740 2046
70 897 961 1033 1117 1165 1218 1280 1353 1520 1740 2046
75 953 1015 1084 1164 1215 1258 1320 1382 1534 1740 2046
80 953 1015 1084 1164 1215 1258 1320 1382 1534 1740 2046
85 1047 1110 1180 1261 1310 1354 1415 1471 1614 1788 2046
90 1181 1254 1334 1428 1485 1537 1610 1674 1842 2049 2330
95 1333 1418 1511 1621 1680 1750 1835 1913 2113 2366 2713
100 1528 1630 1745 1880 1960 2041 2143 2245 2503 2835 3312
105 1528 1630 1745 1880 1960 2041 2143 2245 2503 2835 3312
110 1528 1630 1745 1880 1960 2041 2143 2245 2503 2835 3312
115 1528 1630 1745 1880 1960 2041 2143 2245 2503 2835 3312
120 1585 1655 1745 1880 1960 2041 2143 2245 2503 2835 3312
125 1714 1789 1869 1957 2000 2054 2143 2245 2503 2835 3312
For gradients greater than 1 in 50 rising – use distances for 1 in 50 rising. For gradients greater than 1 in 50 falling – seek derogation.
Uncontrolled When Printed Document comes into force 06/12/2014
Supersedes GKRT0075 Iss 2 on 06/12/2014 Superseded by GKRT0075 Iss 4 on 05/12/2015
Railway Group Standard
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GK/RT0075
Issue Three
Date September 2014
Page 30 of 58 RSSB
Appendix B Signalling Braking Distances for Passenger Trains
The content of this appendix is mandatory
B.1 Composite table for passenger trains (metres)
DISTANCE (METRES)
GRADIENT (mm/m)
Rising Falling
INITIAL SPEED (mph)
30
(1 in 33)
25
(1 in 40)
20
(1 in 50)
15
(1 in 67)
10
(1 in 100)
5
(1 in 200)
2.5
(1 in 400)
Level
Level
2.5
(1 in 400)
5
(1 in 200)
10
(1 in 100)
15
(1 in 67)
20
(1 in 50)
25
(1 in 40)
30
(1 in 33)
10 27 28 29 30 31 32 32 33 33 34 36 38 40 43 46
15 42 44 45 47 49 51 52 53 54 56 59 63 67 72 78
20 62 65 67 70 73 76 78 80 82 84 89 95 101 109 118
25 86 89 93 97 101 106 109 112 115 118 127 136 147 159 174
30 114 120 125 132 138 146 150 154 159 164 175 187 201 218 239
35 150 157 165 173 182 192 197 203 209 215 230 246 265 287 314
40 198 207 215 225 235 246 252 258 266 274 292 312 336 364 399
45 251 263 274 287 300 315 323 332 342 353 377 404 437 476 525
50 313 327 342 359 377 396 407 418 433 447 479 516 561 615 686
55 381 399 418 439 461 487 500 515 533 551 593 642 702 774 871
60 460 483 506 533 562 595 614 632 660 679 734 799 879 979 1117
65 537 564 592 624 658 698 720 742 770 798 864 942 1040 1162 1333
70 624 656 689 728 769 816 843 870 904 938 1018 1113 1234 1387 1607
75 727 766 807 853 904 963 995 1030 1075 1115 1216 1338 1496 1700 2007
80 832 877 925 980 1040 1110 1150 1190 1245 1291 1413 1561 1755 2013 2412
85 940 992 1047 1110 1180 1261 1310 1354 1410 1471 1614 1788 2021 2334 2834
90 1058 1118 1181 1254 1334 1428 1485 1537 1605 1674 1842 2049 2330 2715 3361
95 1190 1260 1333 1418 1511 1621 1680 1750 1835 1913 2113 2366 2713 3207 4100
100 1357 1440 1528 1630 1745 1880 1960 2041 2143 2245 2503 2835 3312 4044 5668
105 1357 1440 1528 1630 1745 1880 1960 2041 2143 2245 2503 2835 3312 4044 5668
110 1357 1440 1528 1630 1745 1880 1960 2041 2143 2245 2503 2835 3312 4044 5668
115 1357 1440 1528 1630 1745 1880 1960 2041 2143 2245 2503 2835 3312 4044 5668
120 1461 1522 1585 1655 1745 1880 1960 2041 2143 2245 2503 2835 3312 4044 5668
125 1579 1646 1714 1789 1869 1957 2000 2054 2143 2245 2503 2835 3312 4044 5668
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Appendix C Signalling Braking Distances for Trains with Enhanced Braking (9%g mean)
The content of this appendix is mandatory
C.1 Table for trains with enhanced braking (9%g mean) in metres
DISTANCE (METRES)
GRADIENT (mm/m)
Rising Falling
INITIAL SPEED (mph)
30
(1 in 33)
25
(1 in 40)
20
(1 in 50)
15
(1 in 67)
10
(1 in 100)
5
(1 in 200)
2.5
(1 in 400)
Level
Level
2.5
(1 in 400)
5
(1 in 200)
10
(1 in 100)
15
(1 in 67)
20
(1 in 50)
25
(1 in 40)
30
(1 in 33)
10 23 24 25 25 26 27 27 28 29 30 31 33 34 37 40
15 37 38 40 41 43 45 46 47 48 49 52 55 59 64 70
20 55 57 60 62 65 68 72 72 74 76 81 86 92 100 110
25 78 81 85 89 93 98 100 103 106 109 117 126 136 149 164
30 105 110 115 121 128 135 139 143 148 153 164 176 191 208 230
35 139 146 153 162 170 180 185 191 197 204 218 235 254 277 306
40 188 196 205 214 224 234 240 246 254 262 279 298 321 347 380
45 232 243 253 264 276 289 296 304 313 322 343 366 393 425 464
50 282 294 306 320 334 351 359 368 379 390 415 442 475 511 557
55 336 350 365 381 399 418 428 438 451 464 493 525 563 606 660
60 395 411 429 448 468 490 502 514 529 544 578 615 659 709 770
65 458 478 497 519 543 568 582 597 614 631 670 712 762 819 890
70 526 548 571 596 623 652 668 684 703 723 767 816 873 937 1017
75 598 624 650 678 708 742 762 779 801 823 872 927 991 1064 1153
80 676 704 734 766 800 838 860 879 904 929 984 1046 1118 1199 1299
85 758 790 823 859 897 940 963 986 1014 1042 1103 1172 1252 1343 1455
90 846 882 919 959 1002 1049 1075 1101 1132 1163 1232 1309 1398 1499 1623
95 939 979 1020 1065 1112 1165 1193 1223 1257 1291 1368 1453 1552 1664 1802
100 1031 1075 1119 1168 1220 1278 1309 1341 1377 1415 1498 1590 1698 1819 1968
105 1132 1179 1228 1282 1339 1402 1437 1472 1514 1553 1644 1745 1862 1994 2157
110 1237 1289 1342 1401 1463 1532 1570 1608 1653 1697 1796 1905 2033 2177 2354
115 1346 1403 1461 1525 1593 1668 1709 1751 1799 1847 1955 2074 2212 2369 2561
120 1461 1522 1585 1655 1728 1810 1855 1900 1952 2004 2121 2250 2400 2569 2777
125 1579 1646 1714 1789 1869 1957 2005 2054 2111 2167 2293 2432 2594 2777 3001
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Appendix D Temporary Speed Restrictions
The content of this appendix is mandatory
D.1 Position of speed indicators and termination indicators
D.1.1 General requirements
D.1.1.1 Where temporary speed restriction speed indicators are required (see 3.4.1.1), they shall be positioned:
a) On the approach to the temporary speed restriction, and
b) As close as practicable to the location where the temporary speed limit commences.
D.1.1.2 Additional speed indicator(s) shall be provided within a temporary speed restriction in the following circumstances:
a) At a position where trains are permitted to reverse direction (for example, at the signal at which the train may reverse direction). In this case the WON shall specify:
‘The speed indicator on the ___ line at ___ miles ___ chains is provided for trains turning back at this location.’
b) Where there is an operational requirement to change drivers (for example, at stations). In this case the WON shall specify:
‘The speed indicator on the ___ line at ___ miles ___ chains applies to changing crews at this location.’
D.1.1.3 Where differential speeds apply, all the required speed indicators and directional indicators shall be positioned together.
D.1.1.4 It is permitted for nominally co-located signs to be separated by a short distance where this would not impair readability.
D.1.2 Position of speed indicators at converging junctions
D.1.2.1 Where lines converge within a temporary speed restriction, a speed indicator shall be provided at each entry to the speed restriction before the convergence, so that trains pass only one speed indicator applicable to the restriction (see Figure D-1).
Additional indicator
for converging line
T
90 20 20 90
20
5020
20
Figure D-1 Example of speed indicators at converging junction (D.1.2.1)
D.1.3 Position of speed and termination indicators at diverging junctions
D.1.3.1 A speed indicator, with an arrow indicating the direction of divergence, shall be provided on the approach to any diverging junction or facing crossover on or over which there is a temporary speed restriction.
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D.1.3.2 Where a temporary speed restriction only applies to the trailing point end of a crossover and the speed indicator cannot be placed at a position within the crossover, the speed indicator (with directional arrow) shall be placed before the facing point end (see Figure D-2). In this case the WON shall specify:
‘The speed indicator on ___ line at ___ miles ___ chains applies only to trains using the crossover to ___ line.’
90
110
20
90
20 90
20 50
110
20
T50
20
Directional indication required
Commencement of 20 speed restriction
Figure D-2 Example of TSR over trailing end of crossover (D.1.3.2)
D.1.3.3 Where a temporary speed restriction applies only over the facing point end of a crossover, a termination indicator (or, if entering another adjoining temporary speed restriction, a speed indicator displaying the value of that speed restriction) shall be placed adjacent to the trailing point end (see Figure D-3). In this case the WON shall specify:
‘The termination indicator on ___ line at ___ miles ___ chains applies only to trains using the crossover from ___ line.’
90
90
11020
5020
50
T
20
T
20
90
110
Termination of 20 speed restriction
Figure D-3 Example of TSR over facing end of crossover (D.1.3.3)
D.2 Temporary speed restriction warning boards and AWS equipment
D.2.1 General requirements for warning boards
D.2.1.1 Warning board(s) shall be positioned as close as practicable to (but not less than) the deceleration distance from the associated speed indicator (see D.2.4).
D.2.1.2 The distance from the warning board to the speed indicator shall be extended:
a) Where this is necessary to avoid AWS conflicts (see D.2.4).
b) So that a warning board is not positioned between existing AWS equipment and the equipment to which the AWS applies.
D.2.1.3 Where the required deceleration distance from the permissible speed on the immediate approach to the temporary speed restriction would result in the warning board being positioned in a section of line with a higher permissible speed, the deceleration distance shall be determined using that higher permissible speed (see Figure D-4).
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DD 40 – 20
60 20 20
20
20 40
406060
DD 60 – 20
Figure D-4 Example of TSR with a higher permissible speed on approach (D.2.1.3)
D.2.1.4 Where the required deceleration distance from the permissible speed on the immediate approach to the temporary speed restriction would result in the warning board being positioned in a section of line with a lower permissible speed, the deceleration distance required for this lower permissible speed shall be determined. If the revised position of the warning board still falls within that lower permissible speed section, it shall be positioned at that distance (see Figure D-5).
DD 40 – 20
40 20 20
20
20 60
604040
DD 60 – 20
Figure D-5 Example of TSR with a lower permissible speed on approach (D.2.1.4)
D.2.1.5 If the revised position of the warning board as set out in D.2.1.4 lies between the permissible speed indicator at the commencement of the higher permissible speed section and the temporary speed restriction speed indicator, the warning board shall be positioned at the permissible speed indicator for the higher speed section to prevent acceleration (see Figure D.6).
(> DD 30 – 20)
30
DD 60 – 20
20 60 20 20
2060603030
20
DD 30 – 20
Figure D-6 Example of TSR with warning board at commencement of higher permissible speed (D.2.1.5)
D.2.2 Requirements for warning boards at converging junctions
D.2.2.1 Where the deceleration distance requires a warning to be given on the approach to a converging junction, a warning board shall be positioned at the appropriate deceleration distance on each line approaching the speed indicator (see Figure D-7).
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Issue Three
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RSSB Page 35 of 58
50
90
50
20
20 20
20
#
#
DD 50 – 20
DD 90 – 20
Figure D-7 Example of warning board positioning at a converging junction (D.2.2.1)
D.2.2.2 Where the required deceleration distances would position one of the warning boards on the approach to a convergence, then all warning boards shall be positioned before the convergence so that a train passes only one warning board on any approach to the temporary speed restriction.
D.2.3 Requirements for warning boards at diverging junctions
D.2.3.1 Where a temporary speed restriction applies over or beyond a diverging junction, and the required deceleration distance places the warning board before the junction (see Figure D-8), the warning board shall incorporate an arrow indicating the direction of divergence. In this case the WON shall specify:
‘The warning board situated on the ___ line at ___ miles ___ chains applies to trains proceeding to the ___ line.’
20 60
20
20
110110
60
< DD 60 – 20
Figure D-8 Example of warning board positioning at a diverging junction (D.2.3.1)
D.2.3.2 Where the deceleration distance would provide a warning board on a diverging line at a position that would cause the associated AWS permanent magnet to be located at or before the facing points, all of the following arrangements shall apply (see Figure D-9):
a) The warning board shall incorporate a directional arrow.
b) The warning board shall be positioned at the facing points.
c) The AWS magnet shall be positioned at the required distance on the approach to the warning board.
Uncontrolled When Printed Document comes into force 06/12/2014
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Figure D-9 Example of diverging junction with warning board located at the facing points (D.2.3.2)
D.2.3.3 Where the deceleration distance would provide the warning board on the approach to a junction signal that is approach controlled from red (permanent or temporary approach control), all of the following arrangements shall apply:
a) The deceleration distance shall be determined using the junction speed.
b) The warning board shall be positioned at or after the sighting point of the signal (including the route indicator), or of the splitting banner repeating signal, where provided (see Figure D-10).
c) The WON shall specify:
‘The warning board situated on the ___ line at ___ miles ___ chains applies to trains proceeding to the ___ line.’
90
110
40
DD Junction Speed – 20
110
90 20
20
20
Warning board positioned
after the sighting point of signal & route indicator
(or splitting banner where provided)
#
Figure D-10 Example of diverging junction where signal is approach released from red (D.2.3.3)
D.2.3.4 Where the deceleration distance would provide the warning board on the approach to a junction signal and the signalling aspect sequence provides information to the driver on which route has been set (for example, the junction signal is approach controlled from yellow with flashing yellows or splitting distant in rear), all of the following arrangements shall apply:
a) The warning board shall be positioned at the deceleration distance calculated using the permissible speed of the line (see Figure D-11).
b) The WON shall specify:
‘The warning board situated on the ___ line at ___ miles ___ chains applies to trains proceeding to the ___ line.’
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90
20
110
#
90
20
20
110
70
DD 110 – 20
Figure D-11 Example of diverging junction where signal is approach released from a higher aspect (D.2.3.4)
D.2.3.5 Where the deceleration distance would provide the warning board on the approach to a junction signal that is not approach controlled or that displays a free single yellow with a standard 4-aspect sequence on the approach, all of the following arrangements shall apply:
a) Temporary approach control from red shall be applied to the signal for the applicable diverging route or straight route (see Figure D-12, which sets out an example of a temporary speed restriction on the straight route).
b) The signal aspect release point shall be at or after the sighting point of the signal (including the route indicator, where applicable), or of the splitting banner repeating signal, where provided.
c) The warning board shall be positioned so that it is visible to the driver when the signal aspect is released from red to display a proceed aspect.
60
20
60
#
60
20
2060
40
Temporary approach control of appropriate route
Warning board positioned
after the sighting point of signal & route indicator
(or splitting banner where provided)
Figure D-12 Example of diverging junction where no previous routing advice is given (D.2.3.5)
D.2.4 Requirements for AWS permanent magnets and AWS cancelling indicators
D.2.4.1 Except where D.2.4.2 applies, an AWS permanent magnet shall be positioned:
a) On all lines that signalled running moves approach the warning board, whether or not the line is fitted with AWS (see Figure D-13).
b) 180 m (200 yd) on the approach to the temporary speed restriction warning board, unless the criteria in D.2.4.3 apply.
c) Where the criteria in D.2.4.3 apply, between 45 m (50 yd) and 180 m (200 yd) from the warning board, subject to a minimum of 4 seconds running time at permitted speed (see Figure D-14).
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GK/RT0075
Issue Three
Date September 2014
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20
DD 90 – 20
90
#
50 #
90
Figure D-13 Example of usual positioning of AWS magnets (D.2.4.1a)
<#
20
DD 90 – 2020
90
(> DD 90 – 20)
#
4 seconds
(min 45 m [50 yd])
Portable AWS not allowed within these limits
Figure D-14 Example of critical positioning of AWS magnets (D.2.4.1c)
D.2.4.2 The AWS permanent magnet shall not be provided, either:
a) In an AWS gap area (see GE/RT8035), or
b) On lines from which trains always start from rest, for example, bay or terminal platforms. In this case the WON shall specify:
‘No AWS at warning board on ___ line at ___ miles ___ chains.’
D.2.4.3 The AWS permanent magnet shall not be positioned within 4 seconds running time of the AWS equipment associated with any of the following, which apply in the same direction:
a) A signal (including fixed distant boards and SPAD indicators).
b) A permissible speed warning indicator.
c) A level crossing advanced warning sign (St. Georges Cross).
D.2.4.4 By exception, where no other configuration of warning board and AWS position is practicable:
a) The warning board shall be positioned at a signal.
b) The AWS equipment associated with the signal shall be re-configured to generate an AWS caution indication in the driving cab, regardless of the aspect displayed by the signal (see Figure D-15). In this case the infrastructure manager shall assess the SPAD risk arising from disconnection of the AWS, and ensure that the correct AWS functionality for the signal is restored at the earliest opportunity.
c) The WON shall specify:
‘Warning Board positioned at signal no. ___ on ___ line, an AWS warning indication will be given irrespective of the aspect exhibited by the signal.’
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RSSB Page 39 of 58
Disconnect AWS
20
Figure D-15 Example of warning board at signal with signal AWS electromagnet disconnected (D.2.4.4)
D.2.4.5 On single or bi-directional lines, where it is possible to utilise existing AWS equipment associated with a signal or sign for the opposing direction, which is normally suppressed for movements in the direction towards the warning board (see Figure D-16):
a) The warning board shall be positioned to utilise the existing AWS equipment for the opposing direction.
b) The warning board shall be positioned at the required distance beyond the existing AWS equipment (see D.2.4.1).
c) The suppression shall be disconnected.
d) An AWS cancelling indicator shall not be provided.
90
20
90
#
DD 90 – 20
Disconnect suppression
Figure D-16 Example of disconnection of suppressor on existing magnet (D.2.4.5)
D.2.4.6 On single and bi-directional lines, except where the arrangement in D.2.4.5 is used, an AWS cancelling indicator shall:
a) Be provided.
b) Be positioned 180 m (200 yd) beyond the portable AWS equipment when travelling in the direction for which the warning is not applicable (see Figures D-17 and D-18). This distance shall be adjusted to avoid conflict with other equipment so that the AWS cancelling indicator is positioned between 4 and 7 seconds running time from the AWS equipment, subject to a minimum of 45 m (50 yd).
D.2.4.7 On single or bi-directional lines:
a) The AWS permanent magnet and its AWS cancelling indicator shall not be positioned between a signal or a sign (that apply to movements in the same direction as the AWS cancelling indicator), and the AWS equipment associated with that signal or sign.
b) The warning board shall be positioned accordingly (see Figures D-17 and D-18).
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90
20
90
# #
Figure D-17 Example showing use of AWS cancelling indicator (D.2.4.6 / D.2.4.7)
90
20
90
# #
Figure D-18 Another example showing use of AWS cancelling indicator (D.2.4.6 / D.2.4.7)
D.2.4.8 Where the deceleration distance means that a warning board is to be positioned on a line not fitted with AWS, between a junction leading onto an AWS fitted line and the protecting signal, the warning board shall be positioned at the signal and provided with its own portable AWS equipment (see Figure D-19). In this case the WON shall specify:
‘Warning Board positioned at signal no. ___ on ___ line applies to trains proceeding towards the ___ line. An AWS warning indication will be given irrespective of the aspect exhibited by the signal.’
20
#
40
110
20
> DD 40 – 20
DD 110 – 20
Unfitted
Fitted
#
30
40
30
110 20
20
Unfitted
Figure D-19 Example showing provision of a warning board on an unfitted line leading to a fitted line (D.2.4.8)
D.2.4.9 Where the deceleration distance means that a warning board is required on an AWS fitted line 4 to 7 seconds running time beyond a crossover from an unfitted line, where AWS equipment is provided ahead of the signal for trains proceeding onto the fitted line, all the following arrangements shall apply (see Figure D-20):
a) The existing AWS equipment shall be re-configured so that a caution indication is provided in the driving cab.
b) A permanent magnet shall not be provided.
c) The WON shall specify:
‘The AWS magnet for signal no. ___ on ___ line will give an AWS warning indication for trains proceeding towards the warning board on ___ line at ___ miles ___ chains irrespective of the aspect exhibited by the signal.’
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#
40
110
20DD 110 – 20
Unfitted
Fitted
30
40
30
110
Unfitted
#
Disconnect electro-magnet
Figure D-20 Example showing disconnection of AWS in advance of protecting signal leading to a fitted line (D.2.4.9)
D.2.5 Repeater warning boards
D.2.5.1 A repeater warning board, showing the restricted speed, shall be provided where:
a) The deceleration distance means that the warning board is positioned on the approach to a passenger station, or on a bay platform line or siding, and
b) The associated speed indicator is positioned at least 300 m beyond the station or siding connection.
D.2.5.2 Each repeater warning board shall be configured as shown in Figure D-21 and positioned so that it is visible to drivers before trains start from rest.
D.2.5.3 Repeater warning boards shall be provided from any other line where trains always start from rest.
D.2.5.4 AWS permanent magnets shall not be provided for repeater warning boards.
D.2.5.5 Where repeater warning boards are provided, the WON shall specify either:
‘Repeater warning board positioned ahead of ___ station, for temporary speed restriction on the___ line commencing at ___ miles ___ chains.’ or
‘Repeater warning board positioned at signal no. ___, for temporary speed restriction on the ___ line commencing at ___ miles ___ chains.’
90
20
90 20
20 MAIN LINE
PLATFORM LOOP
GOODS LOOP
SIDING
R
R
R
> 300 m
R
20
20
20
20
Figure D-21 Example showing use of repeater warning boards (D.2.5.2)
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D.3 Requirements for adjacent temporary speed restrictions
D.3.1 Where a lower speed is followed by a higher speed
D.3.1.1 Where a temporary speed restriction is immediately followed by another temporary speed restriction with a higher speed all of the following arrangements shall apply (see Figure D-22):
a) A speed indicator for the higher temporary speed restriction shall be positioned at the end of the lower speed restriction.
b) A termination indicator shall not be provided for the lower temporary speed restriction.
c) A warning board shall not be provided for the higher temporary speed restriction.
d) The WON shall specify:
‘No warning board for ___ mph speed restriction on ___ line commencing at ___ miles ___ chains.’
90
TT
90 20 20 50 90
5090
50
5020
DD 90 – 20 DD 90 – 50
20
(extended 50)
Commencement of work
Figure D-22 Example of a lower TSR followed by a higher TSR (D.3.1.1)
D.3.2 Where a higher speed is followed by a lower speed
D.3.2.1 Where the deceleration distance means that the warning board for a temporary speed restriction falls within or before a higher temporary speed restriction all of the following arrangements shall apply (see Figures D-23 and D-24):
a) The higher temporary speed restriction shall be extended to terminate at the commencement of the lower temporary speed restriction.
b) A termination indicator for the first temporary speed restriction shall not be provided.
c) The warning board for the second restriction, if this is within the higher temporary speed restriction, shall be positioned at the deceleration distance calculated using the speed of the first temporary speed restriction (rather than the permissible speed of the line).
T T
(extended 40)
DD 90 – 40 DD 90 – 20 DD 40 – 20
40 40 20 20 20
20409090 40 90
Figure D-23 Example of a higher TSR followed by a lower TSR (D.3.2.1)
TT
(extended 40)
DD 40 – 20DD 90 – 20DD 90 – 40
90 90
40 20
90
40
40
20 20
20 90
Figure D-24 Another example of a higher TSR followed by a lower TSR (D.3.2.1)
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D.3.3 Where warning boards coincide
D.3.3.1 Where two or more warning boards, for separate diverging routes or successive speed restrictions on the same line, are calculated to fall within 4 seconds running time of each other:
a) The warning boards shall be positioned so that the AWS magnet for the second warning board is positioned immediately after the first warning board in the direction of travel.
b) A separate AWS magnet shall be provided for each warning board.
c) The AWS magnet for each warning board shall be positioned in accordance with D.2.4.
D.3.3.2 Where the conditions of D.3.3.1 apply to speed restrictions on diverging routes (see Figure D-25):
a) The warning board for the straight route shall be positioned so that the driver passes it first.
b) In the case of the divergence the WON shall specify:
‘The second warning board and associated AWS warning indication on ___ line at ___ miles ___ chains apply only to trains proceeding to ___ line.’
DD 90 – 20 DD 90 – 30
90
20
90
30
#
20
20
30
30
> 45 m (50 yd)
Figure D-25 Example of co-incident warning boards for diverging routes (D.3.3.2)
D.3.3.3 Where the conditions of D.3.3.1 apply to successive speed restrictions on the same line, the warning boards shall be positioned in the order in which the speed restrictions are approached (see Figure D-26).
> DD 90 – 30 for TSR(1)
90
20
90
30
#
30 20
20
30
30
DD 90 – 20 for TSR(2)DD 90 – 30 for TSR(1)
> 45 m (50 yd)
Figure D-26 Example of successive speed restrictions on the same line (D.3.3.3)
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D.4 Altering temporary speed restrictions
D.4.1 Moving temporary speed restriction limits
D.4.1.1 It is permissible for the limits of a temporary speed restriction to be moved progressively along a line, provided that the commencement is not moved towards drivers in the direction of travel. Both of the following arrangements shall apply:
a) The speed indicator and termination indicator shall be repositioned as the worksite is moved, and the warning board shall be repositioned at deceleration distance from the repositioned speed indicator.
b) The WON shall specify:
‘Moving temporary speed restriction.’
D.4.1.2 If it is not practicable to reposition the warning board (see Figure D-27):
a) The speed indicator and associated warning indicator shall remain in the original position.
b) The termination indicator shall be repositioned so that it indicates the end of the temporary speed restriction at all times.
90 90 20 90 20
20 20
Moving speed restriction Tunnel
Cannot be moved inside tunnel
Speed indicator must remain
right in its original position
T
T
(with restricted clearance)
due to limited clearance
Figure D-27 Example showing a moving TSR where the warning board cannot be moved (D.4.1.2)
D.4.2 Withdrawing and increasing speeds of temporary speed restrictions
D.4.2.1 If the implementation of a temporary speed restriction is published or notified, and then its speed is raised earlier than planned, the speed indicators, warning boards and repeater warning boards shall:
a) Remain in the same position until the published time and date for their removal, and
b) Be altered to show the higher speed.
D.4.2.2 If a temporary speed restriction is published or notified but then does not need to be imposed, or if it is withdrawn earlier than shown in the WON, the speed indicators, warning boards and repeater warning boards, where required, shall:
a) Be erected or retained in the published position, unless a Special Notice cancelling the restriction is issued at least 24 hours before the temporary speed restriction is planned to commence.
b) Where erected or retained, be altered to show the permissible speed of the line or ‘Spate’ indications (see Figure D-28).
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Figure D-28 Example of a TSR not imposed or withdrawn early (D.4.2.2)
D.4.2.3 Where temporary speed restrictions adjoin (see D.3), the first temporary speed restriction shall only be relaxed or removed, which will leave an adjoining restriction in place, when:
a) The warning boards for the remaining temporary speed restriction have been repositioned to take account of the change, and
b) Amended details have been published in the WON.
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Appendix E Emergency Speed Restrictions
The content of this appendix is mandatory
E.1 Management of emergency speed restrictions
E.1.1 A temporary speed restriction shall be implemented as an emergency speed restriction if:
a) It has not been published in the WON.
b) It has only been published in an amendment to the WON.
c) The actual speed restriction is slower than the speed details published in the WON, or
d) The speed restriction applies at a time that is different to the details published in the WON.
E.1.2 The infrastructure manager shall consistently communicate details of all emergency speed restrictions to the drivers of all railway undertakings that operate over the route.
E.1.3 An emergency speed restriction shall be managed as a temporary speed restriction only after the correct details have been published in the WON.
E.2 Provision of speed indicators, warning boards and AWS equipment
E.2.1 Emergency speed restrictions shall be implemented as temporary speed restrictions, in accordance with the requirements of this standard, except that a risk assessment is not required for the disconnection of an AWS electromagnet at a signal.
E.2.2 In addition, an emergency indicator shall be positioned:
a) On the approach to the AWS permanent magnet for the warning board.
b) Not less than 180 m (200 yd) before the warning board.
c) Not further than 400 m (440 yd) before the warning board.
E.2.3 An AWS permanent magnet shall be positioned on the approach to the emergency indicator (see Figure E-1).
E.2.4 The emergency indicator and associated permanent magnet shall remain in place until either:
a) The relevant details have been published in the WON, or
b) The speed restriction has been withdrawn.
90 90
20
#
90
# max 400 m
(440 yd)
Emergency indicator shown
positioned at minimum
distance from warning board
Figure E-1 Example of arrangements for emergency speed restriction (E.2.2)
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Appendix X Deceleration Distances
The content of this appendix is mandatory
X.1 Deceleration distance to speed restriction of 10 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5R 2.5F 5F 10F 15F 20F
10
20 402 402 402 402 402 402 402 402 402 402 402
25 402 402 402 402 402 402 402 402 402 422 523
30 402 402 402 402 402 402 412 422 523 644 885
35 402 402 402 443 473 503 553 604 744 986 1408
40 402 443 503 583 643 704 784 865 1066 1408 2012
45 523 604 664 785 845 905 995 1086 1267 1569 2072
50 523 604 664 785 845 905 995 1086 1267 1569 2072
55 602 652 710 785 845 905 995 1086 1267 1569 2072
60 716 776 845 929 980 1032 1097 1162 1329 1569 2072
65 775 838 910 996 1049 1102 1168 1234 1428 1730 2132
70 862 929 1004 1096 1150 1205 1276 1348 1569 1871 2132
75 945 984 1086 1187 1257 1328 1408 1489 1650 1871 2132
80 945 984 1086 1187 1257 1328 1408 1489 1650 1871 2132
85 1040 1102 1171 1251 1309 1368 1428 1489 1650 1871 2132
90 1173 1246 1325 1419 1484 1549 1629 1710 1911 2152 2454
95 1325 1409 1502 1612 1681 1750 1840 1931 2173 2454 2816
100 1520 1621 1735 1870 1961 2052 2152 2253 2555 2917 3319
105 1520 1621 1735 1870 1961 2052 2152 2253 2555 2917 3319
110 1520 1621 1735 1870 1961 2052 2152 2253 2555 2917 3319
115 1520 1621 1735 1870 1961 2052 2152 2253 2555 2917 3319
120 1574 1643 1735 1870 1961 2052 2152 2253 2555 2917 3319
125 1702 1777 1856 1944 1998 2052 2152 2253 2555 2917 3319
Gradients are shown in mm/m as ‘R’ for rising and ‘F’ for falling
Table X-1 Deceleration distance in metres to speed restriction of 10 mph
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X.2 Deceleration distance to speed restriction of 20 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5R 2.5F 5F 10F 15F 20F
20
25 402 402 402 402 402 402 402 402 402 402 402
30 402 402 402 402 402 402 402 402 443 543 805
35 402 402 402 402 422 443 483 523 664 885 1267
40 402 402 463 523 573 624 694 764 986 1287 1811
45 483 543 604 704 764 825 925 1026 1207 1489 1971
50 483 543 604 704 764 825 925 1026 1207 1489 1971
55 560 607 662 729 777 825 925 1026 1207 1489 1971
60 674 733 799 880 929 979 1042 1105 1268 1489 1971
65 736 796 866 950 1001 1052 1116 1180 1345 1650 2092
70 826 890 964 1053 1106 1160 1225 1291 1489 1831 2092
75 886 966 1046 1147 1207 1267 1357 1448 1609 1831 2092
80 891 966 1046 1147 1207 1267 1357 1448 1609 1831 2092
85 1013 1075 1143 1222 1275 1328 1398 1469 1609 1831 2092
90 1147 1218 1297 1389 1449 1509 1589 1670 1871 2092 2414
95 1298 1382 1473 1582 1656 1730 1820 1911 2132 2414 2776
100 1492 1593 1705 1838 1925 2012 2112 2213 2515 2877 3299
105 1492 1593 1705 1838 1925 2012 2112 2213 2515 2877 3299
110 1492 1593 1705 1838 1925 2012 2112 2213 2515 2877 3299
115 1492 1593 1705 1838 1925 2012 2112 2213 2515 2877 3299
120 1540 1608 1705 1838 1925 2012 2112 2213 2515 2877 3299
125 1670 1750 1831 1911 1971 2032 2122 2213 2515 2877 3299
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-2 Deceleration distance in metres to speed restriction of 20 mph
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X.3 Deceleration distance to speed restriction of 30 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5R 2.5F 5F 10F 15F 20F
30
35 402 402 402 402 402 402 402 402 523 704 1066
40 402 402 402 422 472 523 593 664 825 1106 1609
45 402 443 523 624 694 644 845 925 1086 1348 1851
50 402 443 523 624 694 644 845 925 1086 1348 1851
55 480 522 570 630 700 644 847 925 1086 1348 1851
60 596 648 709 783 794 805 898 991 1142 1348 1851
65 661 717 781 860 892 925 1000 1075 1230 1529 1971
70 757 817 887 970 1008 1046 1121 1196 1408 1750 1971
75 845 905 986 1066 1126 1187 1285 1358 1549 1750 1971
80 845 905 986 1066 1126 1187 1285 1358 1549 1750 1971
85 964 1023 1089 1165 1216 1267 1312 1358 1549 1750 1971
90 1098 1166 1243 1331 1389 1448 1528 1609 1790 2012 2293
95 1248 1329 1418 1529 1589 1650 1740 1831 2052 2313 2655
100 1440 1538 1647 1777 1864 1951 2051 2152 2434 2796 3219
105 1440 1538 1647 1777 1864 1951 2051 2152 2434 2796 3219
110 1440 1538 1647 1777 1864 1951 2051 2152 2434 2796 3219
115 1440 1538 1647 1777 1864 1951 2051 2152 2434 2796 3219
120 1485 1550 1647 1777 1864 1951 2051 2152 2434 2796 3219
125 1613 1690 1770 1871 1921 1971 2061 2152 2434 2796 3219
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-3 Deceleration distance in metres to speed restriction of 30 mph
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X.4 Deceleration distance to speed restriction of 40 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 (1 in 400) Level (1 in 400) 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5R 2.5F 5F 10F 15F 20F
40
45 402 402 402 463 523 583 663 744 885 1106 1569
50 402 402 402 463 523 583 663 744 885 1106 1569
55 402 402 426 473 528 583 663 744 885 1106 1569
60 475 518 568 630 668 706 754 803 932 1107 1569
65 545 593 648 714 759 805 865 925 1086 1328 1811
70 648 702 763 845 886 927 996 1066 1247 1529 1831
75 744 805 885 966 1016 1066 1146 1227 1428 1609 1831
80 766 812 885 966 1016 1066 1146 1227 1428 1609 1831
85 887 943 1004 1086 1126 1167 1227 1287 1428 1609 1831
90 1021 1085 1158 1247 1307 1368 1438 1509 1670 1891 2152
95 1171 1247 1332 1431 1500 1569 1649 1730 1931 2193 2515
100 1359 1453 1556 1690 1770 1851 1961 2072 2334 2676 3098
105 1359 1453 1556 1690 1770 1851 1961 2072 2334 2676 3098
110 1359 1453 1556 1690 1770 1851 1961 2072 2334 2676 3098
115 1359 1453 1556 1690 1770 1851 1961 2072 2334 2676 3098
120 1428 1509 1569 1690 1770 1851 1961 2072 2334 2676 3098
125 1569 1629 1710 1811 1851 1891 1981.5 2072 2334 2676 3098
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-4 Deceleration distance in metres to speed restriction of 40 mph
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X.5 Deceleration distance to speed restriction of 50 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5 R 2.5 F 5F 10F 15F 20F
50
55 402 402 402 402 402 402 402 402 402 422 664
60 402 402 402 409 435 461 494 528 617 740 1046
65 402 422 463 506 544 583 623 664 785 986 1428
70 523 563 604 664 704 744 804 865 1006 1247 1609
75 624 664 744 825 865 905 975 1046 1227 1428 1609
80 658 699 744 825 865 905 975 1046 1227 1428 1609
85 780 830 884 947 986 1026 1086 1147 1267 1428 1609
90 914 972 1046 1127 1177 1227 1287 1348 1509 1710 1931
95 1062 1133 1210 1308 1368 1428 1498 1569 1770 2012 2293
100 1246 1333 1448 1569 1639 1710 1810 1911 2152 2454 2877
105 1246 1333 1448 1569 1639 1710 1810 1911 2152 2454 2877
110 1246 1333 1448 1569 1639 1710 1810 1911 2152 2454 2877
115 1246 1333 1448 1569 1639 1710 1810 1911 2152 2454 2877
120 1368 1428 1489 1569 1639 1710 1810 1911 2152 2454 2877
125 1489 1549 1629 1710 1760 1811 1861 1911 2152 2454 2877
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-5 Deceleration distance in metres to speed restriction of 50 mph
X.6 Deceleration distance to speed restriction of 60 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5R 2.5F 5F 10F 15F 20F
60
65 402 402 402 402 402 402 402 402 402 483 724
70 402 402 402 422 442 463 503 543 644 825 1267
75 463 503 543 583 613 644 704 764 905 1147 1267
80 523 551 586 628 653 678 721 764 905 1147 1267
85 640 682 728 780 810 841 877 914 1026 1147 1267
90 774 824 880 945 985 1026 1076 1127 1267 1428 1650
95 921 983 1050 1130 1178 1227 1297 1368 1529 1730 2012
100 1106 1187 1287 1388 1458 1529 1619 1710 1911 2213 2575
105 1106 1187 1287 1388 1458 1529 1619 1710 1911 2213 2575
110 1106 1187 1287 1388 1458 1529 1619 1710 1911 2213 2575
115 1127 1187 1287 1388 1458 1529 1619 1710 1911 2213 2575
120 1267 1308 1368 1428 1478 1529 1619 1710 1911 2213 2575
125 1388 1448 1509 1589 1629 1670 1720 1770 1911 2213 2575
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-6 Deceleration distance in metres to speed restriction of 60 mph
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X.7 Deceleration distance to speed restriction of 70 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5R 2.5F 5F 10F 15F 20F
70
75 402 402 402 402 402 402 402 402 443 583 925
80 402 402 402 418 434 450 469 489 536 590 925
85 483 503 530 570 597 624 646 668 732 808 925
90 600 644 682 744 774 805 834 863 966 1086 1247
95 745 805 851 925 965 1006 1056 1106 1247 1408 1609
100 945 1006 1086 1187 1237 1287 1367 1448 1629 1871 2193
105 945 1006 1086 1187 1237 1287 1367 1448 1629 1871 2193
110 945 1006 1086 1187 1237 1287 1367 1448 1629 1871 2193
115 1006 1046 1086 1187 1237 1287 1367 1448 1629 1871 2193
120 1147 1187 1247 1308 1338 1368 1408 1448 1629 1871 2193
125 1267 1328 1388 1448 1488 1529 1569 1609 1690 1871 2193
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-7 Deceleration distance in metres to speed restriction of 70 mph
X.8 Deceleration distance to speed restriction of 80 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5R 2.5F 5F 10F 15F 20F
80
85 402 402 402 402 402 402 402 402 402 402 422
90 402 422 445 478 497 517 540 564 619 685 770
95 563 583 624 664 688 712 748 785 865 966 1106
100 744 785 845 905 955 1006 1056 1106 1247 1428 1650
105 744 785 845 905 955 1006 1056 1106 1247 1428 1650
110 764 785 845 905 955 1006 1056 1106 1247 1428 1650
115 865 905 945 986 1006 1026 1056 1106 1247 1428 1650
120 1006 1046 1086 1127 1157 1187 1217 1247 1308 1428 1650
125 1127 1167 1227 1287 1317 1348 1378 1408 1489 1569 1670
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-8 Deceleration distance in metres to speed restriction of 80 mph
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X.9 Deceleration distance to speed restriction of 90 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5 R 2.5 F 5F 10F 15F 20F
90
95 402 402 402 402 402 402 402 402 422 463 523
100 503 523 563 604 634 664 694 724 825 925 1086
105 503 523 563 604 634 664 694 724 825 925 1086
110 604 624 644 664 674 684 704 724 825 925 1086
115 704 744 764 805 815 825 845 865 905 966 1086
120 845 865 905 945 965 986 1006 1026 1086 1147 1207
125 966 1006 1046 1106 1126 1147 1177 1207 1267 1328 1408
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-9 Deceleration distance in metres to speed restriction of 90 mph
X.10 Deceleration distance to speed restriction of 100 mph
GRADIENT (mm/m)
Initial Speed 1 in 50 1 in 67 1 in 100 1 in 200 1 in 400 Level 1 in 400 1 in 200 1 in 100 1 in 67 1 in 50
(mph) 20R 15R 10R 5R 2.5 R 2.5 F 5F 10F 15F 20F
100
105
110 402 412 422 443 453 463 468 473 493 513 533
115 523 543 563 583 593 604 614 624 654 684 724
120 644 664 694 724 739 754 774 795 825 865 905
125 785 805 835 865 885 905 930 956 1006 1056 1106
Gradients are shown as ‘R’ for rising and ‘F’ for falling
Table X-10 Deceleration distance in metres to speed restriction of 100 mph
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Appendix Y Key to Symbols Used in this Standard
Spate indicator
xx
xx
xx
DD yy–xx
yy/zz
Section of line showing (in upright type) permissible speed (xx mph) (in italics) temporary speed restriction (yy mph)
Section of line with differential temporary speed restriction (yy mph and zz mph)
Permissible speed indicator (xx indicates speed displayed)
Permissible speed warning indicator
(xx indicates speed displayed)
Position of warning board at deceleration distance (DD) from speed indicator (for speed reduction from yy mph to xx mph)
AWS magnet for signal
yy
yy T
Speed indicator marking commencement of temporary speed restriction (yy indicates speed displayed)
Termination indicator for temporary speed restriction
yy
Portable AWS magnet for temporary speed restriction (permanent magnet only)
Warning board for temporary speed restriction (yy indicates speed displayed)
R
Repeater warning board for temporary speed restriction
Emergency indicator (for emergency speed restriction)
#
AWS cancelling indicator
Distance between warning board and associated AWS equipment
xx
Section of line showing permissible speed (xx mph)
Section of line with differential permissible speeds (yy mph and zz mph)
P AWS magnet for permissible speed warning indicator (“P” indicates permanent magnet only)
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Definitions
Actual signalling braking distance (ASD)
The actual distance between a signal displaying the first cautionary aspect and the signal displaying the associated stop aspect.
Attainable speed (as applicable to this document)
The maximum speed that any permitted type of rolling stock can achieve over a specific section of line, where it is not possible for any rolling stock authorised to operate on the line to attain the permissible speed. Attainable speed can be used as the basis of deceleration distance calculations for temporary speed restrictions or to enable the driver to bring the train to a stand at a stop signal.
Deceleration distance
The minimum distance at which a warning indicator (for a permissible speed) or a warning board (for a temporary or emergency speed restriction) shall be positioned approaching the start of the change in speed to which it applies, in order to ensure that all trains have sufficient warning to be able to conform to the required reduction in speed.
Differential speed
A permissible speed or speed restriction applicable to a particular type of train, where different values of speed are applicable to different types of trains over the same section of line.
Differential speeds include:
a) Standard differential speed − Two values of permissible speed, or two different speed values for a temporary speed restriction, each of which is applicable to one of two standard categories of trains, as defined in the Rule Book.
b) Non-standard differential speed − A permissible speed for a specific type of train, which is different from that for other types of trains on the same section of line. This comprises ‘Permissible speed indicators with letters’ and ‘Enhanced permissible speed indicators’ as described in the Rule Book. Non-standard differential speeds are not applicable to temporary or emergency speed restrictions.
Emergency speed restriction
A speed restriction not shown in the Weekly Operating Notice (WON), or which is more restrictive than shown, or which applies at a time other than that shown in the WON.
Enhanced permissible speed
The permitted speed (higher than the permissible speed) over a section of line which applies to a specific type of train operating at cant deficiencies in excess of those permitted at the permissible speed (see GE/RT8012 and GC/RT5021).
Excess signalling braking distance The distance by which the actual signalling braking distance exceeds the minimum signalling braking distance.
Lineside operational safety sign
Lineside operational safety signs include speed indicators, warning indicators and emergency indicators, as depicted in GI/RT7033: Lineside Operational Safety Signs, Appendix A, sections AD, AE and AF.
Miniature permissible speed indicator
A reduced size indicator in accordance with GI/RT7033, Appendix A, sections AD and AE showing the permissible speed(s) over a section of line.
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Minimum signalling braking distance (MSD)
The calculated minimum distance between a signal displaying the first caution aspect and the signal displaying the associated stop aspect.
Overrun
Passing the end of movement authority (the end of movement authority is the point where a train is required to come to a stand on completion of a signalled movement). On lines signalled with lineside signals, the conventional terminology for an overrun is a signal passed at danger (SPAD). The definition includes both failure to come to a stand at a signal at danger and starting from rest against a signal at danger.
Permissible speed
The authorised maximum speed over a section of line, either for all trains or (where differential speeds are applied) for specific types of trains, as set out in the Sectional Appendix.
Permissible speed indicator
An indicator in accordance with GI/RT7033, Appendix A, sections AD and AE showing the permissible speed(s) over a section of line.
Permissible speed warning indicator
An indicator in accordance with GI/RT7033 showing warning of a reduction of permissible speed over a section of line.
Signal
Throughout this document the word ‘signal’ shall be understood to include any lineside sign that performs the function of a signal.
Signalling braking distance (as applied to this document) The distance between the signal exhibiting the first caution aspect and the signal at which the train is required to stop
Spate indicator (Speed Previously Applied Terminated Early)
A trackside indicator which informs the driver that a temporary speed restriction has been withdrawn earlier than published or has not been applied.
Temporary speed restriction
A speed, less than the permissible speed, applied for a pre-planned period not normally exceeding six months.
Weekly Operating Notice (WON)
The Weekly Operating Notice (WON) is the official printed notice which includes advice to drivers of temporary speed restrictions and alterations to permissible speeds. GO/RT3215: Requirements for WON, PON and Sectional Appendix, details requirements for the format and contents of the WON.
Other defined terms are included in GK/GN0802: Glossary of Signalling Terms.
Uncontrolled When Printed Document comes into force 06/12/2014
Supersedes GKRT0075 Iss 2 on 06/12/2014 Superseded by GKRT0075 Iss 4 on 05/12/2015
Lineside Signal Spacing and Speed Signage
Railway Group Standard
GK/RT0075
Issue Three
Date September 2014
RSSB Page 57 of 58
Abbreviations and Acronyms
AWS Automatic warning system
ERTMS European Rail Traffic Management System
ESR Emergency speed restriction
PON Periodic Operating Notice
SPAD Signal passed at danger
Spate Speed Previously Applied Terminated Early
TSR Temporary speed restriction
WON Weekly Operating Notice
Uncontrolled When Printed Document comes into force 06/12/2014
Supersedes GKRT0075 Iss 2 on 06/12/2014 Superseded by GKRT0075 Iss 4 on 05/12/2015
Railway Group Standard
Lineside Signal Spacing and Speed Signage
GK/RT0075
Issue Three
Date September 2014
Page 58 of 58 RSSB
References
The Catalogue of Railway Group Standards gives the current issue number and status of documents published by RSSB. This information is also available from www.rgsonline.co.uk.
RGSC 01 Railway Group Standards Code
RGSC 02 The Standards Manual
Documents referenced in the text
Railway Group Standards
GC/RT5021 Track System Requirements
GE/RT8000 Rule Book
GE/RT8012 Controlling the Speed of Tilting Trains Through Curves
GE/RT8075 AWS and TPWS Interface Requirements
GE/RT8037 Signal Positioning and Visibility
GE/RT8270 Assessment of Compatibility of Rolling Stock and Infrastructure
GI/RT7033 Lineside Operational Safety Signs
GK/RT0045 Lineside Signals, Indicators, and Layout of Signals
GM/RT2041 Braking System Requirements and Performance for Trailer Coaching Stock
GM/RT2042 Braking System Requirements and Performance for Traction Units
GM/RT2043 Braking System and Performance for Freight Trains
GM/RT2044 Braking System Requirements and Performance for Multiple Units
GM/RT2045 Braking Principles for Rail Vehicles
GO/RT3215 Requirements for the Weekly Operating Notice, Periodical Operating Notice and Sectional Appendix
RSSB documents
GK/GN0675 Guidance on Lineside Signal Spacing and Speed Signage
GK/GN0802 Glossary of Signalling Terms
RS521 Signals, handsignals, indicators and signs handbook
Uncontrolled When Printed Document comes into force 06/12/2014
Supersedes GKRT0075 Iss 2 on 06/12/2014 Superseded by GKRT0075 Iss 4 on 05/12/2015